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Combined impacts of ENSO and MJO on the 2015 growing season drought on the Canadian Prairies

机译:ENSO和MJO对2015年加拿大大草原生长季干旱的综合影响

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Warm-season precipitation on the Canadian Prairies plays a crucial role in agricultural production. This research investigates how the early summer?2015 drought across the Canadian Prairies is related to the tropical Pacific forcing. The significant deficit of precipitation in May and June?2015 coincided with a warm phase of the El Ni?o–Southern Oscillation (ENSO) and a negative phase of Madden–Julian Oscillation (MJO)-4 index, which favour a positive geopotential height (GPH) anomaly in western Canada. Our further investigation during the instrumental record (1979–2016) shows that warm-season precipitation in the Canadian Prairies and the corresponding atmospheric circulation anomalies over western Canada teleconnected with the lower boundary conditions in the tropical western Pacific. Our results indicate that MJO can play a crucial role in determining the summer precipitation anomaly in the western Canadian Prairies when the equatorial central Pacific is warmer than normal (NINO4??0) and MJO is more active. This teleconnection is due to the propagation of a stationary Rossby wave that is generated in the MJO-4 index region. When the tropical convection around MJO-4 index region (western tropical Pacific, centred over 140 sup°/sup E) is more active than normal (NINO4??0), Rossby wave trains originate from the western Pacific with wavenumbers determined by the background mean wind and meridional absolute vorticity gradient. Under warm NINO4 conditions waves are generated with smaller wavenumbers compared to cold NINO4 conditions. These waves under warm NINO4 can propagate into the mid-latitudes over North America, causing a persistent anomalous ridge in the upper level over western Canada, which favours dry conditions over the region.
机译:加拿大大草原的暖季降水在农业生产中起着至关重要的作用。这项研究调查了2015年夏初加拿大大草原的干旱与热带太平洋强迫的关系。 2015年5月和6月的显着降水赤字与厄尔尼诺-南方涛动(ENSO)的暖期和Madden-Julian涛动(MJO)-4指数的负期相吻合,这有利于正势高度(GPH)异常在加拿大西部。我们在仪器记录(1979-2016年)期间的进一步调查显示,加拿大大草原的暖季降水和加拿大西部相应的大气环流异常与热带西太平洋的低边界条件遥相关。我们的结果表明,当赤道中太平洋的温度比正常高(NINO4?>?0)并且MJO更加活跃时,MJO在确定加拿大西部大草原的夏季降水异常中起着至关重要的作用。这种远程连接是由于在MJO-4索引区域中生成的平稳Rossby波的传播所致。当MJO-4指数区域(西部热带太平洋,中心位于140 ° E)附近的热带对流活动比正常活动(NINO4?>?0)活跃时,Rossby波列起源于西太平洋由背景平均风和子午绝对涡度梯度确定的波数。与寒冷的NINO4条件相比,在温暖的NINO4条件下产生的波数较小。在温暖的NINO4之下,这些波能传播到北美中纬度地区,在加拿大西部上层造成持续的异常山脊,这有利于该地区的干旱条件。

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